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首页> 外文期刊>The Plant Cell >The rice basic helix-loop-helix transcription factor TDR INTERACTING PROTEIN2 is a central switch in early anther development.
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The rice basic helix-loop-helix transcription factor TDR INTERACTING PROTEIN2 is a central switch in early anther development.

机译:水稻基本螺旋-环-螺旋转录因子TDR INTERACTING PROTEIN2是早期花药发育的重要开关。

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In male reproductive development in plants, meristemoid precursor cells possessing transient, stem cell-like features undergo cell divisions and differentiation to produce the anther, the male reproductive organ. The anther contains centrally positioned microsporocytes surrounded by four distinct layers of wall: the epidermis, endothecium, middle layer, and tapetum. Here, we report that the rice (Oryza sativa) basic helix-loop-helix (bHLH) protein TDR INTERACTING PROTEIN2 (TIP2) functions as a crucial switch in the meristemoid transition and differentiation during early anther development. The tip2 mutants display undifferentiated inner three anther wall layers and abort tapetal programmed cell death, causing complete male sterility. TIP2 has two paralogs in rice, TDR and EAT1, which are key regulators of tapetal programmed cell death. We revealed that TIP2 acts upstream of TDR and EAT1 and directly regulates the expression of TDR and EAT1. In addition, TIP2 can interact with TDR, indicating a role of TIP2 in later anther development. Our findings suggest that the bHLH proteins TIP2, TDR, and EAT1 play a central role in regulating differentiation, morphogenesis, and degradation of anther somatic cell layers, highlighting the role of paralogous bHLH proteins in regulating distinct steps of plant cell-type determination.
机译:在植物的雄性生殖发育中,具有瞬时干细胞样特征的间质前体细胞经历细胞分裂和分化,从而产生花药,即雄性生殖器官。花药包含位于中心的微孢子细胞,周围被四个不同的壁层包围:表皮,内皮,中间层和绒毡层。在这里,我们报道水稻(Oryza sativa)基本螺旋-环-螺旋(bHLH)蛋白TDR相互作用蛋白2(TIP2)在早期花药发育过程中,作为分生组织过渡和分化的关键开关。 tip2突变体显示未分化的内部三个花药壁层并中止绒毡层程序性细胞死亡,从而导致完全雄性不育。 TIP2在水稻中有两个同源物,即TDR和EAT1,它们是细胞程序性死亡的主要调控因子。我们发现,TIP2在TDR和EAT1的上游起作用,并直接调节TDR和EAT1的表达。此外,TIP2可以与TDR相互作用,表明TIP2在后期花药发育中的作用。我们的发现表明,bHLH蛋白TIP2,TDR和EAT1在调节花药体细胞层的分化,形态发生和降解中起着核心作用,突出了旁系bHLH蛋白在调节植物细胞类型确定的不同步骤中的作用。

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